Renormalization group analysis of the Reynolds stress transport equation
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Publication:4019485
DOI10.1063/1.858396zbMath0762.76047OpenAlexW2017465991MaRDI QIDQ4019485
J. Michael Barton, Robert Rubinstein
Publication date: 16 January 1993
Published in: Physics of Fluids A: Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: http://hdl.handle.net/2060/19920014299
Rotta modelpressure gradient-velocity correlationYakhot-Orszag renormalization grouphigher order nonlinear modelsisotropy term
Related Items (5)
A relaxation approximation for time-dependent second-order effects in shear turbulence ⋮ Derivation of a second-order model for Reynolds stress using renormalization group analysis and the two-scale expansion technique ⋮ Statistical mechanics renormalization group calculations for inhomogeneous turbulence ⋮ Renormalization group analysis of the magnetohydrodynamic turbulence and dynamo ⋮ Derivation of a model Reynolds-stress transport equation using the renormalization of the eddy-viscosity-type representation
Cites Work
- Further results in the theory of matrix polynomials
- Renormalization group analysis of turbulence. I: Basic theory
- Nonlinear Reynolds stress models and the renormalization group
- Statistical analysis of the deviation of the Reynolds stress from its eddy-viscosity representation
- On nonlinear K-l and K-ε models of turbulence
- Statistical modelling of passive-scalar diffusion in turbulent shear flows
- Theory of the pressure–strain rate. Part 2. Diagonal elements
- Development of turbulence models for shear flows by a double expansion technique
- Progress in the development of a Reynolds-stress turbulence closure
- A more general effective-viscosity hypothesis
- On the prediction of equilibrium states in homogeneous turbulence
- Renormalization group analysis of anisotropic diffusion in turbulent shear flows
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